Enhancing the spontaneous emission of single emitters has been an important subject in nano optics in the past decades. For this purpose, plasmonic nanoantennas have been proposed with enhancement factors typically larger than those achievable with optical cavities. However, the intrinsic ohmic losses of plasmonic structures also introduce an additional nonradiative decay channel, reducing the quantum yield. Here we report on experimental studies of a weakly coupled dielectric substrate and a plasmonic nanoantenna for enhancing the radiative decay rate of single terrylene molecules embedded in an ultrathin organic film. We systematically investigate how the refractive index of the dielectric substrate affects the lifetime and the quantum ef...
A nanoscale layer of chromium or titanium is commonly used in plasmonic nanoantennas to firmly adher...
Plasmonic nanostructures have been widely known for their notable capability to enhance spontaneous ...
Plasmonic structures interacting with light provide electromagnetic resonances that result in a high...
Enhancing the spontaneous emission of single emitters has been an important subject in nano optics i...
We demonstrate a strong, 5-fold enhancement of the radiative decay rate from highly efficient fluore...
We demonstrate a strong, 5-fold enhancement of the radiative decay rate from highly efficient fluore...
To move nanophotonic devices such as lasers and single-photon sources into the practical realm, a ch...
We apply two- and three-dimensional numerical calculations to study optical nanoantennae made of two...
We numerically investigate and experimentally demonstrate a new route to controllably manipulate the...
In this dissertation, the nanoantenna is used for the application of optical limiting. The strong lo...
In this study, we theoretically investigated the single-molecule fluorescence enhancement in a slit-...
We investigate the impact of the dipole-active modes formed via the mode-mixing of the dipole mode w...
Single photon emitters are quantum light sources that can enable a variety of quantum based technolo...
We present a theoretical study of the spontaneous emission of an optical emitter close to a metal na...
We compute the decay rates of emitters coupled to spheroidal nanoantennas made of gold, copper, silv...
A nanoscale layer of chromium or titanium is commonly used in plasmonic nanoantennas to firmly adher...
Plasmonic nanostructures have been widely known for their notable capability to enhance spontaneous ...
Plasmonic structures interacting with light provide electromagnetic resonances that result in a high...
Enhancing the spontaneous emission of single emitters has been an important subject in nano optics i...
We demonstrate a strong, 5-fold enhancement of the radiative decay rate from highly efficient fluore...
We demonstrate a strong, 5-fold enhancement of the radiative decay rate from highly efficient fluore...
To move nanophotonic devices such as lasers and single-photon sources into the practical realm, a ch...
We apply two- and three-dimensional numerical calculations to study optical nanoantennae made of two...
We numerically investigate and experimentally demonstrate a new route to controllably manipulate the...
In this dissertation, the nanoantenna is used for the application of optical limiting. The strong lo...
In this study, we theoretically investigated the single-molecule fluorescence enhancement in a slit-...
We investigate the impact of the dipole-active modes formed via the mode-mixing of the dipole mode w...
Single photon emitters are quantum light sources that can enable a variety of quantum based technolo...
We present a theoretical study of the spontaneous emission of an optical emitter close to a metal na...
We compute the decay rates of emitters coupled to spheroidal nanoantennas made of gold, copper, silv...
A nanoscale layer of chromium or titanium is commonly used in plasmonic nanoantennas to firmly adher...
Plasmonic nanostructures have been widely known for their notable capability to enhance spontaneous ...
Plasmonic structures interacting with light provide electromagnetic resonances that result in a high...